Literature DB >> 14680905

High-field proton MRS of human brain.

Alfonso Di Costanzo1, F Trojsi, M Tosetti, G M Giannatempo, F Nemore, M Piccirillo, S Bonavita, G Tedeschi, T Scarabino.   

Abstract

Proton magnetic resonance spectroscopy (1H-MRS) of the brain reveals specific biochemical information about cerebral metabolites, which may support clinical diagnoses and enhance the understanding of neurological disorders. The advantages of performing 1H-MRS at higher field strengths include better signal to noise ratio (SNR) and increased spectral, spatial and temporal resolution, allowing the acquisition of high quality, easily quantifiable spectra in acceptable imaging times. In addition to improved measurement precision of N-acetylaspartate, choline, creatine and myo-inositol, high-field systems allow the high-resolution measurement of other metabolites, such as glutamate, glutamine, gamma-aminobutyric acid, scyllo-inositol, aspartate, taurine, N-acetylaspartylglutamate, glucose and branched amino acids, thus extending the range of metabolic information. However, these advantages may be hampered by intrinsic field-dependent technical difficulties, such as decreased T2 signal, chemical shift dispersion errors, J-modulation anomalies, increased magnetic susceptibility, eddy current artifacts, limitations in the design of homogeneous and sensitive radiofrequency (RF) coils, magnetic field instability and safety issues. Several studies demonstrated that these limitations could be overcome, suggesting that the appropriate optimization of high-field 1H-MRS would expand the application in the fields of clinical research and diagnostic routine.

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Year:  2003        PMID: 14680905     DOI: 10.1016/j.ejrad.2003.08.009

Source DB:  PubMed          Journal:  Eur J Radiol        ISSN: 0720-048X            Impact factor:   3.528


  19 in total

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Review 3.  Proton MR spectroscopy of the brain at 3 T: an update.

Authors:  Alfonso Di Costanzo; Francesca Trojsi; Michela Tosetti; Timo Schirmer; Silke M Lechner; Teresa Popolizio; Tommaso Scarabino
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Review 4.  N-Acetylaspartate in the CNS: from neurodiagnostics to neurobiology.

Authors:  John R Moffett; Brian Ross; Peethambaran Arun; Chikkathur N Madhavarao; Aryan M A Namboodiri
Journal:  Prog Neurobiol       Date:  2007-01-05       Impact factor: 11.685

Review 5.  Neurochemistry of drug action: insights from proton magnetic resonance spectroscopic imaging and their relevance to addiction.

Authors:  Stephanie C Licata; Perry F Renshaw
Journal:  Ann N Y Acad Sci       Date:  2010-02       Impact factor: 5.691

6.  Attention-deficit/hyperactivity disorder and brain metabolites from proton magnetic resonance spectroscopy: a systematic review and meta-analysis protocol.

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Journal:  Trends Psychiatry Psychother       Date:  2021-02-15

7.  Fast T2*-weighted MRI of the prostate at 3 Tesla.

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Journal:  J Magn Reson Imaging       Date:  2011-04       Impact factor: 4.813

Review 8.  Neuroimaging findings in treatment-resistant schizophrenia: A systematic review: Lack of neuroimaging correlates of treatment-resistant schizophrenia.

Authors:  Shinichiro Nakajima; Hiroyoshi Takeuchi; Eric Plitman; Gagan Fervaha; Philip Gerretsen; Fernando Caravaggio; Jun Ku Chung; Yusuke Iwata; Gary Remington; Ariel Graff-Guerrero
Journal:  Schizophr Res       Date:  2015-02-13       Impact factor: 4.939

9.  Determining the in vivo transverse relaxation time of GABA in the human brain at 7T.

Authors:  Jarunee Intrapiromkul; He Zhu; Ying Cheng; Peter B Barker; Richard A E Edden
Journal:  J Magn Reson Imaging       Date:  2012-12-13       Impact factor: 4.813

10.  Phenylketonuria: white-matter changes assessed by 3.0-T magnetic resonance (MR) imaging, MR spectroscopy and MR diffusion.

Authors:  T Scarabino; T Popolizio; M Tosetti; D Montanaro; G M Giannatempo; R Terlizzi; S Pollice; A Maiorana; N Maggialetti; A Carriero; V Leuzzi; U Salvolini
Journal:  Radiol Med       Date:  2009-03-10       Impact factor: 3.469

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